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首页> 外文期刊>Journal of Thermal Spray Technology >Internal Diameter Coating by Warm Spraying of Fine WC-12Co Powders (-10+2 mu m) with Very Short Spray Distances up to 10 mm
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Internal Diameter Coating by Warm Spraying of Fine WC-12Co Powders (-10+2 mu m) with Very Short Spray Distances up to 10 mm

机译:通过温暖的WC-12CO粉末(-10 +2μm)热喷涂具有非常短的喷雾距离,高达10 mm的内径涂层

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摘要

The internal diameter (ID) coating by means of thermal spraying is currently experiencing growing interest in science and industry. In contrast to the well-established plasma- and arc-based spray techniques, there is a lack of knowledge concerning kinetic processes such as HVOF, HVAF and warm spray (WS). A major challenge represents the necessity of short spray distances and the compact design of novel ID spray guns with reduced combustion power. Conventional WC-Co powders (- 45 + 15 mu m) are not able to achieve a sufficient heat and momentum transfer. The use of fine powders < 15 mu m offers an approach to overcome this drawback as they feature a larger surface-to-volume ratio and a lower mass. However, the processing of fine powders requires suitable spray equipment and a sensitive parameter adjustment. In this study, warm spraying of fine WC-12Co powders (- 10 + 2 mu m) with a novel ID spray gun (HVOF + N-2) "ID RED" (Thermico Engineering GmbH, Germany) was investigated. First, the flame profile as well as the in-flight behavior of the particles along the spray jet (spray distances SD = 10-80 mm) was analyzed at different nitrogen flows NF = 15-115 L/min to find suitable spray parameter intervals. Subsequently, planar steel samples were coated with SD = 10-50 mm and constant NF = 90 L/min. Analyses regarding the microstructure, the mechanical properties and the phase evolution of the coatings were performed. The aim was to study spraying with the novel ID gun and to scrutinize shortest feasible spray distances. Finally, steel tubes (internal diameter of 81.6 mm and a wall thickness of 10.0 mm) were coated with SD = 20 mm and NF = 90 L/min to investigate in how far the results can be transferred to ID parts. Correlations between the particle behavior, the microstructure and the coating properties were made.
机译:通过热喷涂的内径(ID)涂层目前正受到科学和工业界越来越多的关注。与成熟的基于等离子和电弧的喷涂技术相比,缺乏关于HVOF、HVAF和温喷涂(WS)等动力学过程的知识。一个主要的挑战是必须缩短喷射距离,并设计紧凑的新型ID喷枪,降低燃烧功率。传统的WC-Co粉末(-45+15μm)无法实现足够的热量和动量传递。使用<15μm的细粉末可以克服这一缺点,因为它们具有较大的表面体积比和较低的质量。然而,微细粉末的加工需要合适的喷涂设备和敏感的参数调整。在这项研究中,使用新型ID喷枪(HVOF+N-2)“ID红色”(德国Thermico Engineering GmbH)对细WC-12Co粉末(-10+2μm)进行了温喷涂研究。首先,在不同的氮气流量NF=15-115 L/min下,分析了火焰分布以及喷雾射流(喷雾距离SD=10-80 mm)上颗粒的飞行行为,以找到合适的喷雾参数间隔。随后,用SD=10-50 mm和常数NF=90 L/min对平面钢样品进行涂层。对涂层的微观结构、机械性能和相演变进行分析。目的是研究新型ID枪的喷洒,并仔细研究最短可行的喷洒距离。最后,钢管(内径为81.6 mm,壁厚为10.0 mm)涂上SD=20 mm和NF=90 L/min的涂层,以研究结果可以传输到ID零件的程度。研究了颗粒行为、微观结构和涂层性能之间的关系。

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